Atomfair CID 82915 C8H12Cl2Pt

Description CID 82915 (Cycloocta-1,5-diene Platinum(II) Dichloride) is a highly specialized organometallic compound with the molecular formula C8H12Cl2Pt . This platinum-based complex features a cyclooctadiene ligand, making it a valuable precursor in catalytic and synthetic applications. With a CAS number of 12080-32-9 , this compound is characterized by its stability and reactivity under controlled conditions. It is supplied as a crystalline solid, ensuring high purity for research and industrial use. Ideal for advanced chemical synthesis, CID 82915 is widely utilized in homogeneous catalysis, material science, and pharmaceutical research. Proper handling under inert atmospheres is recommended due to its sensitivity to moisture…

Description

Description

CID 82915 (Cycloocta-1,5-diene Platinum(II) Dichloride) is a highly specialized organometallic compound with the molecular formula C8H12Cl2Pt. This platinum-based complex features a cyclooctadiene ligand, making it a valuable precursor in catalytic and synthetic applications. With a CAS number of 12080-32-9, this compound is characterized by its stability and reactivity under controlled conditions. It is supplied as a crystalline solid, ensuring high purity for research and industrial use. Ideal for advanced chemical synthesis, CID 82915 is widely utilized in homogeneous catalysis, material science, and pharmaceutical research. Proper handling under inert atmospheres is recommended due to its sensitivity to moisture and air.

  • CAS No: 12080-32-9
  • Molecular Formula: C8H12Cl2Pt
  • Molecular Weight: 374.17
  • Exact Mass: 372.996400
  • Monoisotopic Mass: 372.996400
  • IUPAC Name: cycloocta-1,5-diene;platinum(2+);dichloride
  • SMILES: C1CC=CCCC=C1.[Cl-].[Cl-].[Pt+2]
  • Synonyms: 12080-32-9, AKOS025243313, platinum(2+) 1,5-cyclooctadiene dichloride, cycloocta-1,5-diene;platinum(2+);dichloride, PLATINUM(2+) 1,5-CYCLOOCTADIENE, (Z,Z)- DICHLORIDE

Application

CID 82915 is primarily used as a catalyst precursor in organic synthesis, particularly in hydrogenation and cross-coupling reactions. Its stability and reactivity make it suitable for producing fine chemicals and pharmaceuticals. Researchers also employ it in the development of platinum-containing materials for electronic and optical applications. Additionally, it serves as a key intermediate in the synthesis of other platinum complexes.

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